martes, 16 de febrero de 2016

A year in the lives of smallholder families: Insights from Mozambique, Tanzania, and Pakistan. Un día en la vida de pequeños agricultores familiares


Join CGAP for an event on February 25 to learn and discuss the results of a year-long financial diaries study with smallholder households.

How do the estimated 500 million smallholder households worldwide manage their money and what kind of financial services would better serve this important group?

Until now, very little was known about how financial services could effectively respond to the varied needs of smallholder families around the world. In CGAP's year-long financial diaries study, researchers tracked the financial lives of 270 total smallholder households in Mozambique, Pakistan and Tanzania and came away with unique insights into how these families manage their income, plan for expenses and cope with the unpredictable nature of lives rooted in agriculture.

It is the first time the financial diaries methodology has been used to research the financial lives of smallholders.

Join CGAP on February 25 for an event featuring a panel of experts who will highlight key findings from the Smallholder Diaries and discuss opportunities to design and improve financial solutions for smallholder households.

Speakers:

Jamie Anderson, Financial Sector Specialist, CGAP
Daryl Collins, Managing Director, Bankable Frontier Associates
Wajiha Ahmed, Senior Associate, Bankable Frontier Associates
Henriqueta Hunguana, CEO, ICC Mozambique
Mwombeki Baregu, Head of Agriculture and Rural Finance, Financial Sector Deepening Trust Tanzania
Raheel Rasool, Deputy Director, Development Finance Support Department, State Bank of Pakistan

Event Details:
Date: February 25, 2016
Time: 10 AM - 12 PM EST
Location: World Bank "J" Building
Address: 701 18th Street, NW
Room: 1-050
Washington, DC

For more information visit, http://www.cgap.org/events/year-lives-smallholder-families

- See more at: http://agriprofocus.com/post/56b6321ca93f2577bb3a886e#sthash.19hyYBqf.dpuf

domingo, 14 de febrero de 2016

Los supermercados en Francia obligados a donar los ALIMENTOS que no vendan - Supermarkets in France obliged to donate the FOOD they do not sell

Foto de http://cdn-media-1.lifehack.org/wp-content/files/2015/05/French-supermarket.jpg
Francia se ha convertido en el primer país del mundo que prohíbe a los supermercados tirar o destruir los alimentos que no vendan. En lugar de eso, serán obligados por ley a donarlos a organizaciones benéficas y bancos de alimentos, que serán las encargadas de distribuirlos entre los necesitados.

La ley es la respuesta del Gobierno francés a una campaña puesta en marcha en los últimos meses por Arash Derambarsh, de 35 años, un concejal del municipio de Courbevoie, suburbio al noroeste de París, quién calificó de “escandaloso y absurdo” el desperdicio de comida por parte de los suoermercados.

A la iniciativa del joven político le sucedieron protestas de consumidores y activistas contra la pobreza. Según sus cálculos, en Francia se echan a perder 7 millones de toneladas de alimentos al año. Los activistas esperan ahora persuadir a la UE a adoptar una legislación similar en todos los estados miembros

La normativa ha sido aprobada por unanimidad por el Senado francés y entrará en vigor el próximo miércoles. A partir de entonces, los supermercados no podrán almacenar comida de buena calidad que se acerque a su fecha de caducidad. En su lugar, firmarán convenios de colaboración con organizaciones benéficas, que podrán multiplicar el número de comidas gratuitas que distribuyen cada día.

Se prevén multas de hasta 75.000 euros para los supermercados que destruyan deliberadamente los alimentos con el fin de evitar que sean recuperados por las personas que los recogen de los contenedores próximos a las tiendas. En los últimos años ha crecido en Francia el número de familias, estudiantes, desempleados y personas sin hogar que se alimentan de los productos que recogen de la basura.

Según algunos informes, ciertos supermercados rocían con lejía los alimentos que tiran a la basura para evitar para impedir que sean aprovechados por otras personas. Otros establecimientos almacenan la comida sobrante en depósitos cerrados para su recogida directa por parte camiones de basura.

Jacques Bailet, jefe de Banques Alimentaires (bancos de alimentos), una red nacional de bancos de alimentos, describe la ley como “positiva y muy importante simbólicamente”. “Lo más importante es que los supermercados estarán obligados a firmar un acuerdo de donación con organizaciones benéficas, y así seremos capaces de aumentar la calidad y la diversidad de la comida que distribuimos”, dijo. Estas entidades y las organizaciones de caridad también tendrán obligaciones que cumplir: recoger y almacenar los alimentos en condiciones higiénicas y distribuirlos adecuadamente.
Fuentes: http://www.lavanguardia.com and http://www.portalfruticola.com

Improving vitamin C content in RASPBERRY - Mejorando el contenido de vitamina C en FRAMBUESA


https://upload.wikimedia.org/wikipedia/commons/6/69/Raspberries05.jpg

Reaserchers Javier A. Miret and Sergi Munné-Bosch from the Departament de Biologia Vegetal, Universitat de Barcelona, Spain found a practical way to increase  vitamin C content in raspberries (Rubus idaeus). Abscisic acid (ABA) is a plant growth regulator with roles in senescence, fruit ripening and environmental stress responses. ABA and pyrabactin (a non-photosensitive ABA agonist) effects on red raspberry  fruit development (including ripening) were studied, with a focus on vitamin and antioxidant composition. Application of ABA and/or pyrabactin just after fruit set did not affect the temporal pattern of fruit development and ripening; neither provitamin A (carotenoids) nor vitamin E contents were modified. In contrast, ABA and pyrabactin altered the vitamin C redox state at early stages of fruit development and more than doubled vitamin C contents at the end of fruit ripening. These were partially explained by changes in ascorbate oxidation and recycling. Therefore, ABA and pyrabactin applications may be used to increase vitamin C content of ripe fruits, increasing fruit quality and value. However, treatments containing pyrabactin—combined with ABA or alone—diminished protein content, thus partially limiting its potential applicability.
Source: http://www.sciencedirect.com/science/article/pii/S0308814616302059

sábado, 13 de febrero de 2016

Consider the salt-tolerant POTATO - Considere la PAPA (PATATA) tolerante a las sales

Photo from http://images.askmen.com
Salt water has long been viewed as poison to farming systems, particularly when it comes to the crops we value most. “None of the top five plants eaten by people — wheat, corn, rice, potatoes and soybeans — can tolerate salt,” agricultural experts Edward P. Glenn, J. Jed Brown and James W. O’Leary wrote 16 years ago, in a definitive Scientific American article. “Expose them to seawater, and they droop, shrivel and die within days.”

Now that scientific principle has been cracked — by a Dutch potato that drinks in salt and doesn’t break a sweat. A researcher and a farmer in the Netherlands teamed up to experiment with crops that could thrive in seawater. They set up shop on the island of Texel, a land rich with salt marshes. Along the way, they met an elderly Dutch farmer with an encyclopedic knowledge of thousands of potato varieties. Together, they created the salt-tolerant potato.

If you’re thinking this means a future of pre-salted veggies, hold it right there. “What we find is that, if you tease a plant with salt, it compensates with more sugar,” says Dr. Argen de Vos, the researching half of the duo. “You’d have to eat many many kilos of potatoes before you’d exceed your recommended salt intake.”

De Vos and farmer Marc van Rijsselberghe partnered with MetaMeta, a Dutch development consultant, and laid out a game plan for bringing their potatoes to Pakistan’s salt-ridden lands. They were awarded USAid’s Securing Water for Food Grand Challenge in September, which gave them funding to go forth and spread their seed — $100,000 for the first year, and up to $400,000 over the following two years, provided they reach their technical and financial milestones, Amy C. Garrett, deputy press director for USAid, wrote in an email.

The Guardian positions the spud as “poised to launch a world food revolution,” but Glenn advises you take the news with a healthy grain of salt. The Guardian article says the potato is grown on ‘dilutions of seawater,’ not pure seawater,” he wrote in an email. “So I would say the breakthrough claimed in the article is unsubstantiated.”

It’s a cruel irony that 97.5 percent of the Earth’s water is saltwater, and less than one percent of the leftover freshwater is usable. Meanwhile, 70 percent of that freshwater is used for agricultural purposes. Over the years, the idea has been cautiously floated: What if we could feed crops with salt water? Glenn, Brown and O’Leary were something of pioneers in this corner of the agriculture market. Their 1998 Scientific American article presented their experiments with halophytes, plants that grow in highly saline water. They singled out Salicornia bigelovii, a plant that contains an oil similar to safflower oil, and showed promise as a source of both food and fuel.

The researchers ended their research on a wistful note: “Our goal in the late 1970s was to establish the feasibility of seawater; we expected to see commercial farming within 10 years. Twenty years later seawater agriculture is still at the prototype stage of commercial development.” Since then, more contenders have been floated: Remember this healthier version of a tomato, also grown in diluted salt water? You don’t? That’s because we’re still a long ways from any of these developments translating into money.

“We do have crops that can grow on seawater and demonstration farms have shown the feasibility, but it is still not economically feasible to replace conventional crops with seawater crops,” Glenn told us. As for de Vos and Rijsselberghe’s potatoes, they’re on their way to Pakistan, where they’ll be planted on land that has been unproductive for years. May they cling to the soil and never let go.
Source:  Monica Nicks (http://modernfarmer.com)

viernes, 12 de febrero de 2016

Glyphosate most widely and heavily used HERBICIDE ever - Glifosato el HERBICIDA más difundido y utilizado en el mundo en toda la historia

Photo source: http://i.dailymail.co.uk
This was according to the recently published research paper, ‘Trends in glyphosate herbicide use in the United States and Globally’ by Dr Charles Benbrook, a research professor at Washington State University. US-based non-profit environmental research organisation Environmental Working Group (EWG) said that 8,6 billion kilograms of glyphosate had been used globally to date following its introduction by Monsanto in 1974.

Global glyphosate use increased almost 15-fold after genetically modified and glyphosate-tolerant maize, soybean and cotton, also developed by Monsanto, were introduced in 1996. “The dramatic and rapid growth in overall use of glyphosate will likely contribute to a host of adverse environmental and public health consequences,” said Benbrook. The EWG said that in 2015 “17 of the world’s top cancer researchers voted unanimously to elevate glyphosate’s cancer profile on behalf of the World Health Organisation”.

“After the panel of experts reviewed all of the publicly available research, the WHO’s International Agency for Research on Cancer classified the weed-killer as ‘probably carcinogenic to humans’,” the EWG said. On its company blog, Monsanto responded to Benbrook’s paper by writing that he “omits important context and significantly misrepresents the safety of glyphosate-based herbicides”.

Monsanto also responded that glyphosate safety was supported by one of the most extensive worldwide human health, crop residue and environmental databases ever compiled on an agricultural chemical product. “In evaluations spanning four decades, the overwhelming conclusion of experts worldwide has been that glyphosate, when used according to label directions, does not present an unreasonable risk of adverse effects to humans, wildlife or the environment. Indeed, the overall safety profile has contributed to the increased adoption of glyphosate-based herbicides around the world,” Monsanto said.
Source: Lloyd Phillips (http://farmersweekly.co.za)
Full paper:  http://oscar.caxtonmagsapps.co.za/img/fwf201629121224Trends_in_glyphosate_herbicide_use_in_the_United_States_and_Globally.pdf

jueves, 11 de febrero de 2016

Growing CITRUS and GRAPES at the same farm - Produciendo CITRUS y UVAS en la misma finca

Photo source: http://www.freshfruitportal.com

The farm Matroozefontein has the most westerly citrus orchards and table grape vineyards in Southern Africa. In this arid area, farming under nets has proved a success. Italian consortium Unifrutti has been farming in Mpumalanga and the Eastern Cape since 1998. In 2004, after considering whether to produce citrus for export to the US, it bought the 2200 ha farm a short distance inland from Elands Bay. Here, the company grows citrus and table grapes on 151 ha. The area under cultivation is limited by the availability of irrigation water.

Sandveld citrus production cycle
Simon Baty, farm manager and in charge of the citrus operation, recalls that the navels which were planted initially were unsuccessful in the arid Sandveld. “But we found that lemons, Clementines, mandarins, Midnight Valencias and Late Valencias did well. So we are in the process of topping many of the citrus orchards to some of these varieties. Ultimately, we plan to have 170ha of citrus – we’re now at 104 ha.” Citrus blooms later on the West Coast – in four to six weeks in September and October – than further north. The first fruit set is in mid-October, depending on the cultivar and its age. The second drop is in late November, continuing into early December. Fruit picking starts at the end of April, depending on the cultivar. “We start picking Clementines from the end of April until mid-June,” explains Simon. “Then we pick our early navels and move across to lemons from the last week of June until mid-July. After this we start picking late navels until mid-August. We also pick mandarins from the end of July until late August. As soon as we finish picking mandarins we start on our Midnight Valencias followed by the Late Valencia varieties. By mid-September, picking has been completed.”

Soil quality and fertilisation
The Sandveld has poor sandy soil that is low in nutrients and almost no carbon or humus. On Matroozefontein, they grow citrus mainly on the poorer and grapes on the better soil. “Oak leaf is one of our better soils, but the citrus is on the poorer-quality sand,” says Simon. “We feed these crops hydroponically and provide liquid fertiliser through the drip daily from August to the end of January.” All micro-sprinkler and drip-irrigated blocks receive a carbon-based product, Carbotech from Patensie, through the irrigation system. Composed of humic acid, fulvic acid and amino acids, it stimulates root growth and enhances bacterial and fungal soil micro-organisms in the soil. In addition, chemical fertiliser such as 2:3:4, LAN and potassium sulphate are applied monthly from August to January in the micro-irrigated blocks.
“Because nothing in the soil holds the fertiliser, we’re careful not to over-irrigate and leach it from the soil,” explains Simon. He stopped applying compost and pre-enriched chicken litter fertiliser to the older micro-irrigated citrus orchards a few years ago as this enhanced boron toxicity. He corrected the problem by changing the fertiliser programme. “Farming in sand is tricky. We can quickly correct a mistake, but sand has very low buffering capacity. So, if we make a mistake, the results are immediately evident, enabling us to manage fertiliser and irrigation precisely.
“The climate here is good for citrus but table grapes do even better. For this reason, we’re phasing out unproductive navel citrus varieties and expanding table grape production,” he explains. During picking season, approximately 120 workers are active in the citrus orchards. The yield depends on variables including the cultivar, age of the block and whether or not it is under netting.

Table grapes production cycle
Hein Koegelenberg, in charge of the table grape production, says that the vineyards cover 47 ha, all under shade netting. This will eventually be expanded to 80 ha. Currently, Red Globe covers 17 ha, Sugra One (white seedless) 8 ha, Crimson Seedless 5,2 ha, Autumn Royal 2,6 ha and Dan Ben Hannah (black-seeded) 2,6 ha. Young vines – Tawny Seedless, Sweet Celebration and Arra 15 – together contribute another 11 ha. Pruning starts early in July and is completed by mid-August. The grapes then grow until unwanted shoots are removed from the first week of September. Later in September and into October, surplus bunches are removed to leave 28 bunches per vine. Bunch preparation starts in early November and the grapes are picked from a week before Christmas until mid-February. Favourable conditions under shade netting enable a short growing season. About 120 workers are employed for bunch preparation and 165 for packing.

Climate for colour
This area of the semi-desert Sandveld is ideal for grapes due to its Mediterranean climate. It has a temperature range of 45°C during the day and 13°C at night in summer. In the evenings, the cooler air moves in from the sea, giving the grapes a good and uniform colour without enhancement. “In fact, our red varieties are sometimes almost too dark. Red Globe is ready for harvest for market from week one in January,” he explains.
In the Sandveld, areas with better soil ironically have poorer-quality water. On Matroozefontein, the poor-quality white sand has good-quality irrigation water, which is used to irrigate the vineyards. During hot spells, they are irrigated daily, while fertiliser is applied monthly from August to February.

Shade net success
In 2002, Simon attended a conference in Spain where he was inspired by a Moroccan delegate who successfully grew citrus under shade net and obtaining a higher yield while using 40% less water. “Our conditions here are similar: very dry and arid semi-desert, with an average annual rainfall of 200 mm to 250 mm, and this year just 130 mm,” he says. “When I arrived here in 2005, the first table grape crop was a disaster. We’re situated in a bird conservancy and the only large table grape grower within a 40km radius of the farm, so it was a shock to see half of our grapes destroyed by birds. “One of our former directors, Francesco de Nadia, has experience in using nets in Chile, so he suggested that we experimentally enclose a few blocks under shade netting. We netted a block of table grapes next to an unnetted control block of the same age, rootstock and growing conditions. Our production under the net was double that of the control block. The payback period on the netting was just over a year at the time. We immediately started expanding the area of table grapes under netting,” Simon explains.

Net advantages – grapes
Vines grow vigorously under the nets, while using less fertiliser and water. “Nets reduce the pest problem and wastage as the vines suffer little or no damage from sun, birds or wind. We get larger and more uniformly coloured berries. We need far less labour because the bunches need less preparation. When grapes get to the packhouse, they can be packed more quickly. As we produce more cartons with the same number of people, productivity is 20% to 50% higher than that of other growers in the area,” he explains.

Nets change the micro-climate beneath them
“The higher humidity leads to better shoot elongation, reducing the fertiliser need by 10% to 15%. Annual water use is reduced to about 5000 m³/ha on a mature block. The norm in the Berg River area is 6000 m³/ha to 6500 m³/ha, so a 20% to 30% saving on water is realistic under nets.” Grapes under nets also suffer fewer pest problems, he says. Snails, however, can become a factor, as birds cannot get in to eat them. Celebrex and monoxide are used as bait to kill them. “The main advantages are the saving on labour, growth beyond expectation due to reduced climatic stress, and reduced damage to the bunches. Within 18 months of planting grapes, depending on the variety, we pick and pack 1000 to 2000 export cartons per hectare (4,5 kg/carton) and the following year, 3000 to 4000 cartons. Under nets, we achieve at 30 months, the production that normally takes four years.”
Simon says that netting table grapes is profitable, whatever the cultivar. “We couldn’t produce table grapes here without nets. It took us three or four years to cover all the vineyards and we’ll recover our costs within four to five years.” Grapes do best under Crystal 20% net, which provides 8% shade. Netting also extends the productive life of a block of grapes. They come with an eight-year guarantee but, if well-maintained and properly tensioned for wind, will last for 15 years. Wind causes rubbing against the poles and wires, leading to premature wear.
Matroozefontein’s annual yield of grapes under netting (export cartons at 4,5kg and bunches 600g to 800g as packed) is 6000 cartons/ha for Red Globe, 6500 cartons/ha for Dan Ben Hannah, 5000 cartons/ha for Crimson Seedless, 4200 cartons/ha for Sugra One and 4500 cartons/ha for Autumn Royal. The rest of the vineyards are under still young vines. The farm exports grapes to the Middle East, UK, Europe and Russia.

Net advantages – citrus
In citrus, nets also reduce the leaf and fruit temperatures. “Because of our success with grapes, we cover a 2ha block of Lane Late navels on Carrizo rootstock with different colours of net,” Simon says. “Each colour transmits a unique wavelength of light which affects plant growth differently. After four to five months, the trees under netting were already larger and more luxuriant than those under the control block outside. When we analysed leaf samples after seven months, all the elements were in balance whereas the trees outside were low in nitrogen, calcium and some trace elements,” he explains. Measuring the leaf and fruit temperatures with an infrared thermometer showed an 8°C lower temperature under the nets on hot days (over 35°C). “This lower temperature enables leaves to transpire naturally and the tree to take up the necessary nutrients over a longer period during the day. The nets significantly reduced climatic stress.”
The ambient air temperature may be 35°C but the sand temperature can be 55°C or higher in summer, with heat also being radiated up from the sand. Under nets, sunburn on fruit was reduced from 10% to less than 1%. Additionally, fruit size is larger under nets, and yield up to 50% higher. The fruit count – number in a carton – peaked at 72 outside and 64 under the nets. Wind damage was also lower under the nets. The pest pressure under the net is higher as it excludes natural parasitoids. Some pests are more prolific than others – mealybug and thrips are more of a problem but bollworm and false codling moth are not a problem. Citrus in the Sandveld does best under 18% to 20% shade netting. Citrus is exported to the Middle East, Europe, US, Canada and Russia.

Costs (1 US dollar = R 15,87)
Simon admits that the cost of netting is significant. “When we started, it was R120000/ha for table grapes. Now it’s R150000/ha to R170000/ha for grapes and about R200000/ha for citrus. As for citrus in the Sandveld, the latter is only economically justifiable in the case of high-paying cultivars.” Citrus costs about R150000/ha to establish and netting costs a further R200000/ha. Simon adds that nets seem to work better in a Mediterranean climate of hot dry summers and mild wet winters. So, while they work well in the Sandveld, he advises citrus growers in other areas to conduct their own trials first.
Source: Jay Ferreira (http://farmersweekly.co.za)

miércoles, 10 de febrero de 2016

Los europeos comen el doble de AGUACATES (PALTAS) que hace seis años - European consumers eat twice AVOCADOS than six years ago

(Photo source: https://i.guim.co.uk)
El aguacate o palta es un alimento ritual en la Super Bowl para muchos estadounidenses, siendo este un acontecimiento importante para la industria del aguacate. La Hass Avocado Board (Junta del Aguacate Hass) predijo que los estadounidenses consumirían 278 millones de aguacates durante la semana de la Super Bowl, una gran porción importada de México. 

En Europa no hay tradición de consumo de aguacates pero su consumo en los últimos 6 años se ha duplicado en la UE, estimándose en 0,75 kg per cápita y por año. Los consumidores estadounidenses comen cuatro veces más. Pese a que España produce cerca de 70.000 t de aguacates, la mayoría de los consumidos en la UE son importados, principalmente de Perú, Chile y Sudáfrica, según datos de la ONU. Los Países Bajos actúan como centro de distribución aguacates para el mercado europeo, siendo el mayor país importador y exportador de aguacate de la UE.

El notable aumento del aguacate en Europa se debe a varios factores. En primer lugar, el aumento de la disponibilidad de aguacates sabrosos y listos para consumir ha estimulado el crecimiento del mercado. En segundo lugar, los consumidores cada vez son más conscientes del valor nutricional y versatilidad del aguacate. El aumento de la promoción y de la información al consumidor acerca del uso de aguacates podría, al final, hacer que el aguacate se convirtiera en el aperitivo principal de la Eurocopa de la UEFA.
Fuente: far.rabobank.com y www.freshplaza.es